在3.0 MPa氢气气氛下机械合金化Mg-60%LaNi5制备出镁基复合储氢材料.XRD分析表明氢气氛下球磨60h后的物相为Mg2NiH4,β-MgH2和LaH3.SEM及EDS分析表明该复合材料成分分布均匀.对材料的吸氢动力学特性研究表明:该复合材料具有较高的活性,室温5.0MPa氢气压力下15min内的吸氢量为2.37%;在5.0 MPa氢气压力和373~473 K的条件下,可以在1min之内完成饱和吸氢量的80%以上;在5.0 MPa氢气压力和523~553 K之间的条件下,可以在1min之内完成饱和吸氢量的90%以上;在553 K的最大吸氢量为4.23%.
参考文献
[1] | Seiler A;Schlapbach L;Von Waldkirch Th et al.Active MgH2-Mg systems for hydrogen storage[J].Journal of the Less-Common Metals,1980,73:193. |
[2] | Nobuyuki Nishimiya;Tomohiro Wada;Akihiko Mats-umoto et al.Hydridingdehydriding characteristics of aged Mg-10%Ni alloy hydride and water resistance of sol-gel encapsulated composite[J].Journal of Alloys and Compounds,2000,311:207. |
[3] | 王仲民,周怀营,顾正飞,成钢,成钧.添加钕对Mg2Ni储氢合金的结构和电极性能的影响[J].稀有金属,2004(01):108-111. |
[4] | 经海,郭宏,朱学新,马自力,卢彩涛,徐骏,李成栋,石力开.特种工艺方法制备储氢合金评述[J].稀有金属,2004(01):243-247. |
[5] | Terzieva M.;Peshev P.;Khrussanova M. .Hydriding and dehydriding characteristics of Mg-LaNi5 composite materials prepared by mechanical alloying[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,1998(1/2):235-239. |
[6] | Hayakawa H;Ishido Y;Nomura K et al.Phase transformations among three polymorphs of Mg2NiH4[J].Journal of the Less-Common Metals,1984,103:277. |
[7] | Gross Kar J;Peter Spatz;Andreas Zuttel et al.Mg composites for hydrogen storage the dependence of hydriding properties on composition[J].Journal of Alloys and Compounds,1997,261:276. |
[8] | Liang G.;Huot J. .Hydrogen storage in mechanically milled Mg-LaNi_5 and MgH_2-LaNi_5 composites[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(1/2):261-265. |
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